Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System

Aim. Printing parameters have been studied extensively to improve printing performance, while resins have been studied to a lesser extent. Therefore, we explore the impact of value in the Munsell color system on the mechanical properties and accuracy of printed products. Materials and Methods. Resin...

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Main Authors: Jianping Huang, Wanxiang Ye, Guihua Ye, Qi Jia, Kelun Li, Jiawen Kong, Heng Bo Jiang, Qing Lan, Liming Yu
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/2713524
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author Jianping Huang
Wanxiang Ye
Guihua Ye
Qi Jia
Kelun Li
Jiawen Kong
Heng Bo Jiang
Qing Lan
Liming Yu
author_facet Jianping Huang
Wanxiang Ye
Guihua Ye
Qi Jia
Kelun Li
Jiawen Kong
Heng Bo Jiang
Qing Lan
Liming Yu
author_sort Jianping Huang
collection DOAJ
description Aim. Printing parameters have been studied extensively to improve printing performance, while resins have been studied to a lesser extent. Therefore, we explore the impact of value in the Munsell color system on the mechanical properties and accuracy of printed products. Materials and Methods. Resins having different values were prepared by mixing transparent resin and color pastes. We used plate models for mechanical measurement, crown-and bridge models for accuracy measurement, and disc models for color measurement. Results. The Group E resin, which had the lowest value, had the minimum ultimate flexural strength (61.199 MPa) and a relatively low elastic modulus (19.015 MPa). Excluding the d index, no significant difference in accuracy was observed. In terms of the d index of trueness, the result of the Group E resin was significantly low. The relative errors of trueness were less than 0.0727 μm. The relative errors of precision were less than 0.0093 μm. Conclusion. The value of a resin affects the mechanical properties and accuracy of printed products. It is better to secure flexural strength by using a lower-value resin. High-value resins have relatively low accuracies.
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institution Kabale University
issn 1687-8442
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Advances in Materials Science and Engineering
spelling doaj-art-b52eaccecf53437a8281bcdae34265b32025-08-20T03:39:28ZengWileyAdvances in Materials Science and Engineering1687-84422022-01-01202210.1155/2022/2713524Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color SystemJianping Huang0Wanxiang Ye1Guihua Ye2Qi Jia3Kelun Li4Jiawen Kong5Heng Bo Jiang6Qing Lan7Liming Yu8Department of StomatologyDepartment of StomatologyDepartment of StomatologyThe Conversationalist ClubThe Conversationalist ClubThe Conversationalist ClubThe Conversationalist ClubDepartment of StomatologyDepartment of StomatologyAim. Printing parameters have been studied extensively to improve printing performance, while resins have been studied to a lesser extent. Therefore, we explore the impact of value in the Munsell color system on the mechanical properties and accuracy of printed products. Materials and Methods. Resins having different values were prepared by mixing transparent resin and color pastes. We used plate models for mechanical measurement, crown-and bridge models for accuracy measurement, and disc models for color measurement. Results. The Group E resin, which had the lowest value, had the minimum ultimate flexural strength (61.199 MPa) and a relatively low elastic modulus (19.015 MPa). Excluding the d index, no significant difference in accuracy was observed. In terms of the d index of trueness, the result of the Group E resin was significantly low. The relative errors of trueness were less than 0.0727 μm. The relative errors of precision were less than 0.0093 μm. Conclusion. The value of a resin affects the mechanical properties and accuracy of printed products. It is better to secure flexural strength by using a lower-value resin. High-value resins have relatively low accuracies.http://dx.doi.org/10.1155/2022/2713524
spellingShingle Jianping Huang
Wanxiang Ye
Guihua Ye
Qi Jia
Kelun Li
Jiawen Kong
Heng Bo Jiang
Qing Lan
Liming Yu
Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System
Advances in Materials Science and Engineering
title Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System
title_full Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System
title_fullStr Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System
title_full_unstemmed Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System
title_short Mechanical Properties and Accuracy Evaluation of 3D Printing Based on Value in the Munsell Color System
title_sort mechanical properties and accuracy evaluation of 3d printing based on value in the munsell color system
url http://dx.doi.org/10.1155/2022/2713524
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